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Mechanical 3D characterization of epoxy asphalt concrete for pavement layers of orthotropic steel decks

机译:正交异性钢甲板路面层的环氧沥青混凝土的机械3D表征

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摘要

Epoxy asphalt has been used for over 40 years to pave orthotropic steel deck bridges. However, few investigations have aimed at evaluating and modelling its rheological behaviour. The present paper deals with the three dimensional viscoelastic characterization of epoxy asphalt concrete (EAC) in the frequency domain, focusing on the complex Young's modulus and the complex Poisson's ratio. Cyclic compression tests were performed on cylindrical specimens, providing the measurement of axial and transverse strains. A conventional frequency sweep procedure was followed for different test temperatures. In addition, ordinary hot mix asphalt (HMA) specimens were tested as reference. The time-temperature superposition principle and the Huet-Sayegh rheological model were used to analyse the experimental data. Indirect tensile strength and water sensitivity were also evaluated. Results showed that EAC had higher stiffness and thermal sensitivity with respect to HMA. The complex Poisson's ratio of both EAC and HMA was found to be dependent on temperature and frequency: absolute value ranged from 0.30 to 0.42 and from 0.27 to 0.45, respectively, while the phase angles were lower than 5 degrees. (c) 2015 Elsevier Ltd. All rights reserved.
机译:环氧沥青已使用40多年,用于铺筑正交异性钢桥面桥梁。但是,很少有研究旨在评估和建模其流变行为。本文针对频域的环氧沥青混凝土(EAC)的三维粘弹性表征,着重于复杨氏模量和复泊松比。在圆柱试样上进行了循环压缩试验,提供了轴向和横向应变的测量。对于不同的测试温度,遵循常规的频率扫描程序。此外,还对普通的热拌沥青(HMA)标本进行了测试。利用时间-温度叠加原理和Huet-Sayegh流变模型分析了实验数据。还评估了间接拉伸强度和水敏感性。结果表明,相对于HMA,EAC具有更高的刚度和热敏感性。发现EAC和HMA的复泊松比均取决于温度和频率:绝对值分别在0.30至0.42和0.27至0.45的范围内,而相角小于5度。 (c)2015 Elsevier Ltd.保留所有权利。

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